Citation: Xi Zhang, Li-yan Wang, Jiang-fei Xu, Dao-yong Chen, Lin-qi Shi, Yong-feng Zhou, Zhi-hao Shen. Polymeric Supramolecular Systems: Design, Assembly and Functions[J]. Acta Polymerica Sinica, ;2019, 50(10): 973-987. doi: 10.11777/j.issn1000-3304.2019.19109 shu

Polymeric Supramolecular Systems: Design, Assembly and Functions

  • The interplay between polymer science and supramolecular chemistry leads to formation of various polymeric supramolecular systems. Polymeric supramolecular systems may be of abundant supramolecular structures, thus endowed with many fascinating properties and functions such as reversibility, adaptiveness, self-healing, and stimuli-responsiveness owing to the dynamic nature of noncovalent interactions. This review is aimed to summarize some research progresses on polymeric supramolecular systems in China, including mesogen-jacketed liquid crystalline polymers, non-covalent connected micelles, supramolecular self-assemblies from amphiphilic hyperbranched polymers, layer-by-layer assemblies, supramolecular polymers from controllable fabrication, and artificial molecular chaperones from controllable assembly.
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    1. [1]

      Lehn J M. Supramolecular Chemistry: Concepts and Perspectives. Weinheim: Wiley-VCH, 1995. 1 – 271

    2. [2]

      Ringsdorf H, Schlarb B, Venzmer J. Angew Chem Int Ed, 1988, 27(1): 113 − 158  doi: 10.1002/anie.198801131

    3. [3]

      Tang Wen(唐雯), Yue Kan(岳衎), Cheng Stephen Z D(程正迪). Acta Polymerica Sinica(高分子学报), 2018, (8): 959 − 972  doi: 10.11777/j.issn1000-3304.2018.18102

    4. [4]

      Wang Y, Xu H, Zhang X. Adv Mater, 2009, 21(28): 2849 − 2864  doi: 10.1002/adma.v21:28

    5. [5]

      Liu K, Kang Y, Wang Z, Zhang X. Adv Mater, 2013, 25(39): 5530 − 5548  doi: 10.1002/adma201302015

    6. [6]

      Wang C, Wang Z, Zhang X. Acc Chem Res, 2012, 45(4): 608 − 618  doi: 10.1021/ar200226d

    7. [7]

      Ahlers M, Muller W, Reichert A, Ringsdorf H, Venzmer J. Angew Chem Int Ed, 1990, 29(11): 1269 − 1285  doi: 10.1002/anie.199012691

    8. [8]

      Zhou Q F, Li H M, Feng X D. Macromolecules, 1987, 20(1): 233 − 234  doi: 10.1021/ma00167a042

    9. [9]

      Zhou Q F, Zhu X L, Wen Z Q. Macromolecules, 1989, 22(1): 491 − 493  doi: 10.1021/ma00191a094

    10. [10]

      Xu G Z, Wu W, Shen D Y, Hou J N, Zhang S F, Xu M, Zhou Q F. Polymer, 1993, 34(9): 1818 − 1822  doi: 10.1016/0032-3861(93)90422-7

    11. [11]

      Zhou Q F, Wan X H, Zhu X L, Zhang F, Feng X D. Mol Cryst Liq Cryst, 1993, 231: 107 − 117

    12. [12]

      Hardouin F, Mery S, Achard M F, Noirez L, Keller P. J Phys II, 1991, 1(5): 511 − 520

    13. [13]

      Zhang D, Liu Y X, Wan X H, Zhou Q F. Macromolecules, 1999, 32(13): 4494 − 4496  doi: 10.1021/ma9901386

    14. [14]

      Wan X H, Tu H L, Liu Y X, Zhang D, Chen X F, Zhang H L, Zhou Q F. Chinese J Polym Sci, 2003, 21(1): 21 − 27

    15. [15]

      Tu H L, Wan X H, Liu Y X, Chen X F, Zhang D, Zhou Q F, Shen Z H, Ge J J, Jin S, Cheng S Z D. Macromolecules, 2000, 33(17): 6315 − 6320  doi: 10.1021/ma991768a

    16. [16]

      Yin X Y, Ye C, Ma X, Chen E Q, Qi X Y, Duan X F, Wan X H, Cheng S Z D, Zhou Q F. J Am Chem Soc, 2003, 125(23): 6854 − 6855  doi: 10.1021/ja034462z

    17. [17]

      Chen S, Gao L C, Zhao X D, Chen X F, Fan X H, Xie P Y, Zhou Q F. Macromolecules, 2007, 40(16): 5718 − 5725  doi: 10.1021/ma0703554

    18. [18]

      Chai C P, Zhu X Q, Wang P, Ren M Q, Chen X F, Xu Y D, Fan X H, Ye C, Chen E Q, Zhou Q F. Macromolecules, 2007, 40(26): 9361 − 9370  doi: 10.1021/ma071670t

    19. [19]

      Chen S, Zhang L Y, Gao L C, Chen X F, Fan X H, Shen Z, Zhou Q F. J Polym Sci, Part A: Polym Chem, 2009, 47(2): 505 − 514  doi: 10.1002/pola.v47:2

    20. [20]

      Chen X F, Shen Z, Wan X H, Fan X H, Chen E Q, Ma Y, Zhou Q F. Chem Soc Rev, 2010, 39(8): 3072 − 3101  doi: 10.1039/b814540g

    21. [21]

      Hou Pingping(候平平), Zhang Zhenyu(张振宇), Ping Jing(平静), Shen Zhihao(沈志豪), Fan Xinghe(范星河), Zhou Qifeng(周其凤). Acta Polymerica Sinica(高分子学报), 2017, (10): 1591 − 1608  doi: 10.11777/j.issn1000-3304.2017.17116

    22. [22]

      Tenneti K K, Chen X F, Li C Y, Tu Y F, Wan X H, Zhou Q F, Sics I, Hsiao B S. J Am Chem Soc, 2005, 127(44): 15481 − 15490  doi: 10.1021/ja053548k

    23. [23]

      Shi L Y, Zhou Y, Fan X H, Shen Z H. Macromolecules, 2013, 46(13): 5308 − 5316  doi: 10.1021/ma400944z

    24. [24]

      Zhou F, Gu K H, Zhang Z Y, Zhang M Y, Zhou S, Shen Z, Fan X H. Angew Chem Int Ed, 2016, 55(48): 15007 − 15011  doi: 10.1002/anie.201608043

    25. [25]

      Xie H L, Jie C K, Yu Z Q, Liu X B, Zhang H L, Shen Z H, Chen E Q, Zhou Q F. J Am Chem Soc, 2010, 132(23): 8071 − 8080  doi: 10.1021/ja101184u

    26. [26]

      Zhu Y F, Guan X L, Shen Z H, Fan X H, Zhou Q F. Macromolecules, 2012, 45(8): 3346 − 3355  doi: 10.1021/ma300538h

    27. [27]

      Zhang L Y, Chen S, Zhao H, Shen Z H, Chen X F, Fan X H, Zhou Q F. Macromolecules, 2010, 43(14): 6024 − 6032  doi: 10.1021/ma100847g

    28. [28]

      Zhu Y F, Zhang Z Y, Zhang Q K, Hou P P, Hao D Z, Qiao Y Y, Shen Z H, Fan X H, Zhou Q F. Macromolecules, 2014, 47(9): 2803 − 2810  doi: 10.1021/ma500606e

    29. [29]

      Yi Y, Fan X H, Wan X H, Li L, Zhao N, Chen X F, Xu J, Zhou Q F. Macromolecules, 2004, 37(20): 7610 − 7618  doi: 10.1021/ma0400463

    30. [30]

      Zhang Z Y, Zhang Q K, Shen Z, Yu J P, Wu Y X, Fan X H. Macromolecules, 2016, 49(2): 475 − 482  doi: 10.1021/acs.macromol.5b02630

    31. [31]

      Ping J, Pan H, Hou P P, Zhang M Y, Wang X, Wang C, Chen J, Wu D, Shen Z H, Fan X H. ACS Appl Mater Interfaces, 2017, 9(7): 6130 − 6137  doi: 10.1021/acsami.6b15893

    32. [32]

      Liu S, Pan Q, Xie J, Jiang M. Polymer, 2000, 41(18): 6919 − 6929  doi: 10.1016/S0032-3861(99)00853-8

    33. [33]

      Chen D, Jiang M. Acc Chem Res, 2005, 38(6): 494 − 502  doi: 10.1021/ar040113d

    34. [34]

      Wang M, Jiang M, Ning F, Chen D, Liu S, Duan H. Macromolecules, 2002, 35(15): 5980 − 5989  doi: 10.1021/ma0201330

    35. [35]

      Dou H, Jiang M, Peng H, Chen D, Hong Y. Angew Chem, 2003, 42(13): 1516 − 1519  doi: 10.1002/anie.200250254

    36. [36]

      Wang J, Jiang M. J Am Chem Soc, 2005, 128(11): 3703 − 3708

    37. [37]

      Gu C, Chen D, Jiang M. Macromolecules, 2004, 37(4): 1666 − 1669  doi: 10.1021/ma035386n

    38. [38]

      Chen G, Jiang M. Chem Soc Rev, 2011, 40(5): 2254 − 2266  doi: 10.1039/c0cs00153h

    39. [39]

      Su L, Wang C, Polzer F, Lu Y, Chen G, Jiang M. ACS Macro Lett, 2014, 3(6): 534 − 539  doi: 10.1021/mz500211v

    40. [40]

      Su L, Zhang W, Wu X, Zhang Y, Chen X, Liu G, Chen G, Jiang M. Small, 2015, 11(33): 4191 − 4200  doi: 10.1002/smll.v11.33

    41. [41]

      Liu X, Jiang M, Yang S, Chen M, Chen D, Yang C, Wu K. Angew Chem Int Ed, 2002, 41(16): 2950 − 2953  doi: 10.1002/1521-3773(20020816)41:16<2950::AID-ANIE2950>3.0.CO;2-K

    42. [42]

      Xie D, Jiang M, Zhang G, Chen D. Chem Eur J, 2007, 13(12): 3346 − 3353  doi: 10.1002/(ISSN)1521-3765

    43. [43]

      Guo M, Jiang M, Pispas S, Zhou C. Macromolecules, 2008, 41(24): 9744 − 9749  doi: 10.1021/ma801975s

    44. [44]

      Zhang Y, Jiang M, Zhao J, Ren X, Chen D, Zhang G. Adv Funct Mater, 2005, 15(4): 695 − 699  doi: 10.1002/(ISSN)1616-3028

    45. [45]

      Yu S, Hu J, Pan X, Yao P, Jiang M. Langmuir, 2006, 22(6): 2754 − 2759  doi: 10.1021/la053158b

    46. [46]

      Hu J, Yu S, Yao P. Langmuir, 2007, 23(11): 6358 − 6364  doi: 10.1021/la063419x

    47. [47]

      Liao X, Chen G, Liu X, Chen W, Chen F, Jiang M. Angew Chem Int Ed, 2010, 49(26): 4409 − 4413  doi: 10.1002/anie.201000141

    48. [48]

      Liu X, Jiang M. Angew Chem Int Ed, 2006, 45(23): 3846 − 3850  doi: 10.1002/anie.200504364

    49. [49]

      Lehn J M. Science, 2002, 295(5564): 2400 − 2403  doi: 10.1126/science.1071063

    50. [50]

      Zhang L F, Eisenberg, A. Polym Adv Technol, 1998, 9(10-11): 677 − 699  doi: 10.1002/(ISSN)1099-1581

    51. [51]

      Schenning A P H J, Elissen-Román C, Weener J W, Baars M W P L, van der Gaast S J, Meijer E W. J Am Chem Soc, 1998, 120(32): 8199 − 8208  doi: 10.1021/ja9736774

    52. [52]

      Yan D Y, Zhou Y F, Hou J. Science, 2004, 303(5654): 65 − 67  doi: 10.1126/science.1090763

    53. [53]

      Zhou Y F, Yan D Y. Chem Commun, 2009, 10(10): 1172 − 1188

    54. [54]

      Zhou Y F, Yan D Y. Angew Chem Int Ed, 2004, 43(37): 4896 − 4899  doi: 10.1002/anie.200460325

    55. [55]

      Guo B, Shi Z Q, Yao Y, Zhou Y F, Yan D Y. Langmuir, 2009, 25(12): 6622 − 6626  doi: 10.1021/la901366g

    56. [56]

      Fan Y J, Zhang D P, Wang J, Jin H B, Zhou Y F, Yan D Y. Chem Commun, 2015, 51: 7234 − 7237  doi: 10.1039/C5CC01802A

    57. [57]

      Yu S R, Dong R J, Chen J X, Jiang W F, Zhou Y F, Yan D Y. Biomacromolecules, 2014, 15(5): 1828 − 1836  doi: 10.1021/bm5002203

    58. [58]

      Shi Z Q, Zhou Y F, Yan D Y. Macromol Rapid Commun, 2008, 29(5): 412 − 418  doi: 10.1002/(ISSN)1521-3927

    59. [59]

      Zhou Y F, Yan D Y, Dong W Y, Tian Y. J Phys Chem B, 2007, 111(6): 1262 − 1270  doi: 10.1021/jp0673563

    60. [60]

      Jin H B, Zheng Y L, Liu Y, Cheng H, Zhou Y F, Yan D Y. Angew Chem Int Ed, 2011, 123(44): 10536 − 10540  doi: 10.1002/ange.v123.44

    61. [61]

      Hou Z L, Huang T, Cai C Y, Resheed T, Yu C Y, Zhou Y F, Yan D Y. Chinese J Polym Sci, 2017, 35(5): 602 − 610  doi: 10.1007/s10118-017-1921-x

    62. [62]

      Huang T, Hou Z L, Xu Q S, Huang L, Li C L, Zhou Y F. Langmuir, 2017, 33: 340 − 346  doi: 10.1021/acs.langmuir.6b03869

    63. [63]

      Wang Jie(王洁), Li Huimei(李惠梅), Ni Yunzhou(倪云洲), Zhou Yongfeng(周永丰), Yan Deyue(颜德岳). Acta Polymerica Sinica(高分子学报), 2016, (7): 971 − 978  doi: 10.11777/j.issn1000-3304.2016.16083

    64. [64]

      Huang T, Li H M, Huang L, Li S L, Li K, Zhou Y F. Langmuir, 2016, 32(4): 991 − 996  doi: 10.1021/acs.langmuir.5b04478

    65. [65]

      Li H M, Zhang A D, Li K, Huang W, Mai Y Y, Zhou Y F, Yan D Y. Mater Chem Front, 2018, 2: 1040 − 1045  doi: 10.1039/C8QM00059J

    66. [66]

      Tao W, Liu Y, Jiang BB, Yu S R, Huang W, Zhou Y F, Yan D Y. J Am Chem Soc, 2012, 134(2): 762 − 764  doi: 10.1021/ja207924w

    67. [67]

      Jiang W F, Liu Y, Yu C Y, Li S L, Li Y J, Zhou Y. Chem Commun, 2016, 52(53): 8223 − 8226  doi: 10.1039/C6CC03445D

    68. [68]

      Li Huimei(李慧梅), Wang Jie(王洁), Ni Yunzhou(倪云洲), Zhou Yongfeng(周永丰), Yan Deyue(颜德岳). Acta Chimica Sinica(化学学报), 2016, 74(5): 415 − 421

    69. [69]

      Jiang Wenfeng(江文峰), Chen Jianxin(陈建新), Yu Songrui(吁松瑞), Zhou Yongfeng(周永丰), Yan Deyue(颜德岳). Acta Polymerica Sinica(高分子学报), 2014, (10): 1398 − 1407  doi: 10.11777/j.issn1000-3304.2014.14039

    70. [70]

      Liu Y, Yu C Y, Jin H B, Jiang B B, Zhu X Y, Zhou Y F, Lu Z Y, Yan D Y. J Am Chem Soc, 2013, 135(12): 4765 − 4770  doi: 10.1021/ja3122608

    71. [71]

      Zhang D P, Fan Y J, Li H M, Li K, Yan Y, Zhou Y F, Yan D Y. RSC Adv, 2015, 5(59): 47762 − 47765  doi: 10.1039/C5RA08661B

    72. [72]

      Zhang D P, Liu Y N, Fan Y J, Yu C Y, Zheng Y L, Jin H B, Fu L, Zhou Y F, Yan D Y. Adv Funct Mater, 2016, 26: 7652 − 7661  doi: 10.1002/adfm.v26.42

    73. [73]

      Jiang W F, Zhou Y F, Yan D Y. Chem Soc Rev, 2015, 44(12): 3874 − 3889  doi: 10.1039/C4CS00274A

    74. [74]

      Zhou Y F, Yan D Y. J Am Chem Soc, 2005, 127(30): 10468 − 10469  doi: 10.1021/ja0505696

    75. [75]

      Zhou Y F, Yan D Y. Angew Chem Int Ed, 2005, 44(21): 3223 − 3226  doi: 10.1002/anie.200462622

    76. [76]

      Jin H B, Huang W, Zhu X Y, Zhou Y F, Yan D Y. Chem Soc Rev, 2012, 41: 5986 − 5997  doi: 10.1039/c2cs35130g

    77. [77]

      Mai YY, Zhou Y F, Yan D Y. Macromolecules, 2005, 38(21): 8679 − 8686  doi: 10.1021/ma051377y

    78. [78]

      Hong H Y, Mai YY, Zhou Y F, Yan D Y, Cui J. Macromol Rapid Commun, 2007, 28(28): 591 − 596

    79. [79]

      Radowski M, Shukla A, Böttcher C, Pickaert G, Rehage H, Haag R. Angew Chem Int Ed, 2007, 46(8): 1265 − 1269  doi: 10.1002/anie.200603801

    80. [80]

      Wang Y L, Li B, Zhou Y F, Lu Z Y, Yan D Y. Soft Matter, 2013, 9(12): 3293 − 3304  doi: 10.1039/c3sm27396b

    81. [81]

      Liu Y N, Jin J Y, Deng H P, Li K, Zheng Y L, Yu C Y, Zhou Y F. Angew Chem Int Ed, 2016, 55(28): 8084 − 8089

    82. [82]

      Yu C Y, Ma L, Li S L, Tan H N, Zhou Y F, Yan D Y. Sci Rep, 2016, 6: 26264  doi: 10.1038/srep26264

    83. [83]

      Tan H N, Wang W, Yu C Y, Zhou Y F, Lu Z Y, Yan D Y. Soft Matter, 2015, 11: 8460 − 8470  doi: 10.1039/C5SM01495F

    84. [84]

      Tan H N, Yu C Y, Lu Z Y, Zhou Y F, Yan D Y. Soft Matter, 2017, 13: 6178 − 6188  doi: 10.1039/C7SM01170A

    85. [85]

      Yu C Y, Ma L, Li K, Li S L, Liu Y N, Liu L F, Zhou Y F, Yan D Y. Langmuir, 2017, 33: 388 − 399  doi: 10.1021/acs.langmuir.6b03480

    86. [86]

      Zhou Y F, Huang W, Liu J Y, Zhu X Y, Yan D Y. Adv Mater, 2010, 22(41): 4567 − 4590  doi: 10.1002/adma.201000369

    87. [87]

      Zhu X Y, Zhou Y F, Yan D Y. J Polym Sci,Part B: Polym Phys, 2011, 49(18): 1277 − 1286  doi: 10.1002/polb.22320

    88. [88]

      Wang D L, Zhao T Y, Zhu X Y, Yan D Y, Wang W X. Chem Soc Rev, 2015, 44(12): 4023 − 4071  doi: 10.1039/C4CS00229F

    89. [89]

      Liu J Y, Huang W, Pang Y, Yan D Y. Chem Soc Rev, 2015, 44(12): 3942 − 3953  doi: 10.1039/C5CS00318K

    90. [90]

      Qi Meiwei(戚美薇), Huang Wei(黄卫), Xiao Guyu(肖谷雨), Zhu Xinyuan(朱新远), Gao Chao (高超), Zhou Yongfeng(周永丰). Acta Polymerica Sinica(高分子学报), 2017, (2): 214 − 228  doi: 10.11777/j.issn1000-3304.2017.16324

    91. [91]

      Iler R K. J Colloid Interface Sci, 1966, 21(6): 569 − 594  doi: 10.1016/0095-8522(66)90018-3

    92. [92]

      Decher G, Hong J D. Makromol Chem Macromol Symp, 1991, 46(1): 321 − 327  doi: 10.1002/(ISSN)1521-3900a

    93. [93]

      Wang L Y, Wang Z Q, Zhang X, Shen J C, Chi L, Fuchs H. Macromol Rapid Commun, 1997, 18(6): 509 − 514  doi: 10.1002/marc.1997.030180609

    94. [94]

      Stockton W B, Rubner M F. Macromolecules, 1997, 30(9): 2717 − 2725  doi: 10.1021/ma9700486

    95. [95]

      Wang F, Ma N, Chen Q X, Wang W B, Wang L Y. Langmuir, 2007, 23(19): 9540 − 9542  doi: 10.1021/la701969q

    96. [96]

      Zhang X, Chen H, Zhang H Y. Chem Commun, 2007, (14): 1395 − 1405  doi: 10.1039/B615590A

    97. [97]

      Chen H, Zeng G H, Wang Z Q, Zhang X, Peng M L, Wu L Z, Tung C H. Chem Mater, 2005, 17(26): 6679 − 6685  doi: 10.1021/cm051959u

    98. [98]

      Ma N, Zhang H Y, Song B, Wang Z Q, Zhang X. Chem Mater, 2005, 17(20): 5065 − 5069  doi: 10.1021/cm051221c

    99. [99]

      Ma N, Wang Y P, Wang Z Q, Zhang X. Langmuir, 2006, 22(8): 3906 − 3909  doi: 10.1021/la053441a

    100. [100]

      Xiong H M, Cheng M H, Zhou Z, Zhang X, Shen J C. Adv Mater, 1998, 10(7): 529 − 532  doi: 10.1002/(SICI)1521-4095(199805)10:7<529::AID-ADMA529>3.0.CO;2-E

    101. [101]

      Such G K, Quinn J F, Quinn A, Tjipto E, Caruso F. J Am Chem Soc, 2006, 128(29): 9318 − 9319  doi: 10.1021/ja063043+

    102. [102]

      Caruso F, Caruso R A, Möhwald H. Science, 1998, 282(5391): 1111 − 1114  doi: 10.1126/science.282.5391.1111

    103. [103]

      An Z H, Lu G, Möhwald H, Li J B. Chem Eur J, 2004, 10(22): 5848 − 5852  doi: 10.1002/chem.200400090

    104. [104]

      Wang X, Liu F, Zheng X W, Sun J Q. Angew Chem Int Ed, 2011, 50(48): 11378 − 11381  doi: 10.1002/anie.v50.48

    105. [105]

      Zhang X, Shi F, Yu X, Liu H, Fu Y, Wang Z Q, Jiang L, Li X Y. J Am Chem Soc, 2004, 126(10): 3064 − 3065  doi: 10.1021/ja0398722

    106. [106]

      Yang L, Tan X, Wang Z, Zhang X. Chem Rev, 2015, 115(15): 7196 − 7239  doi: 10.1021/cr500633b

    107. [107]

      Xu Jiangfei(徐江飞), Zhang Xi(张希). Acta Polymerica Sinica(高分子学报), 2017, (1): 37 − 49  doi: 10.11777/j.issn1000-3304.2017.16262

    108. [108]

      De Greef T F A, Smulders M M J, Wolffs M, Schenning A P H J, Sijbesma R P, Meijer E W. Chem Rev, 2009, 109(11): 5687 − 5754  doi: 10.1021/cr900181u

    109. [109]

      Fouquey C, Lehn J M, Levelut A M. Adv Mater, 1990, 2(5): 254 − 257  doi: 10.1002/adma.19900020506

    110. [110]

      Sijbesma R P, Beijer F H, Brunsveld L, Folmer B J B, Ky Hirschberg J H K, Lange R F M, Lowe J K L, Meijer E W. Science, 1997, 278(5343): 1601 − 1604  doi: 10.1126/science.278.5343.1601

    111. [111]

      Bosman A W, Sijbesma R P, Meijer E W. Mater Today, 2004, 7(4): 34 − 39  doi: 10.1016/S1369-7021(04)00187-7

    112. [112]

      Zhang Z, Xia B, Han C, Yu Y, Huang F. Org Lett, 2010, 12(15): 3285 − 3287  doi: 10.1021/ol100883k

    113. [113]

      Zhang Z, Luo Y, Chen J, Dong S, Yu Y, Ma Z, Huang F. Angew Chem Int Ed, 2011, 50(6): 1397 − 1401  doi: 10.1002/anie.v50.6

    114. [114]

      Yang W, Greenaway A, Lin X, Matsuda R, Blake A J, Wilson C, Lewis W, Hubberstey P, Kitagawa S, Champness N R, Schroder M. J Am Chem Soc, 2010, 132(41): 14457 − 14469  doi: 10.1021/ja1042935

    115. [115]

      Zhang K D, Tian J, Hanifi D, Zhang Y, Sue A C H, Zhou T Y, Zhang L, Zhao X, Liu Y, Li Z T. J Am Chem Soc, 2013, 135(47): 17913 − 17918  doi: 10.1021/ja4086935

    116. [116]

      Zhang L, Zhou T Y, Tian J, Wang H, Zhang D W, Zhao X, Liu Y, Li Z T. Polym Chem, 2014, 5(16): 4715 − 4721  doi: 10.1039/C4PY00139G

    117. [117]

      Tian J, Zhou T Y, Zhang S C, Aloni S, Altoe M V, Xie S H, Wang H, Zhang D W, Zhao X, Liu Y, Li Z T. Nat Commun, 2014, 5: 5574  doi: 10.1038/ncomms6574

    118. [118]

      Tian J, Xu Z Y, Zhang D W, Wang H, Xie S H, Xu D W, Ren Y H, Wang H, Liu Y, Li Z T. Nat Commun, 2016, 7: 11580  doi: 10.1038/ncomms11580

    119. [119]

      Liu Y, Yu Y, Gao J, Wang Z, Zhang X. Angew Chem Int Ed, 2010, 49(37): 6576 − 6579  doi: 10.1002/anie.201002415

    120. [120]

      Huang Z, Yang L, Liu Y, Wang Z, Scherman O A, Zhang X. Angew Chem Int Ed, 2014, 53(21): 5351 − 5355  doi: 10.1002/anie.v53.21

    121. [121]

      Chen L, Huang Z, Xu J F, Wang Z, Zhang X. Polym Chem, 2016, 7(7): 1397 − 1404  doi: 10.1039/C5PY01923K

    122. [122]

      Xu Jiangfei(徐江飞), Zhang Xi(张希). Acta Polymerica Sinica(高分子学报), 2017, (1): 3 − 8  doi: 10.11777/j.issn1000-3304.2017.16235

    123. [123]

      Song Q, Xu J F, Zhang X. J Polym Sci Part A: Polym Chem, 2017, 55(4): 604 − 609  doi: 10.1002/pola.28404

    124. [124]

      Yang L, Liu X, Tan X, Yang H, Wang Z, Zhang X. Polym Chem, 2014, 5(2): 323 − 326  doi: 10.1039/C3PY01161E

    125. [125]

      Liu X, Xu J F, Wang Z, Zhang X. Polym Chem, 2016, 7(13): 2333 − 2336  doi: 10.1039/C6PY00071A

    126. [126]

      Liu X, Qin B, Xu J F, Wang Z, Zhang X. J Photochem Photobiol A: Chem, 2018, 355: 414 − 418  doi: 10.1016/j.jphotochem.2017.07.025

    127. [127]

      Song Q, Gao Y, Xu J F, Qin B, Serpe M J, Zhang X. ACS Macro Lett, 2016, 5(10): 1084 − 1088  doi: 10.1021/acsmacrolett.6b00592

    128. [128]

      Xu W, Song Q, Xu J F, Serpe M J, Zhang X. ACS Appl Mater Interfaces, 2017, 9(13): 11368 − 11372  doi: 10.1021/acsami.7b02850

    129. [129]

      Qin B, Zhang S, Song Q, Huang Z, Xu J F, Zhang X. Angew Chem Int Ed, 2017, 56(26): 7639 − 7643  doi: 10.1002/anie.201703572

    130. [130]

      Qin B, Zhang S, Huang Z, Xu J F, Zhang X. Macromolecules, 2018, 51(5): 1620 − 1625  doi: 10.1021/acs.macromol.8b00289

    131. [131]

      Zhang S, Qin B, Huang Z, Xu J F, Zhang X. ACS Macro Lett, 2019, (2): 8,177 − 182

    132. [132]

      Laskey R A, Honda B M, Mills A D, Finch J T. Nature, 1978, 275: 416 − 420  doi: 10.1038/275416a0

    133. [133]

      Mayhew M, Da Silva A C R, Martin J, Erdjument-Bromage H, Tempst P, Hartl F U. Nature, 1996, 379: 420 − 426  doi: 10.1038/379420a0

    134. [134]

      Weissman J S, Rye H S, Fenton W A, Beechem J M, Horwich A L. Cell, 1996, 84: 481 − 490  doi: 10.1016/S0092-8674(00)81293-3

    135. [135]

      Horwich A L, Farr G W, Fenton W A. Chem Rev, 2006, 106: 1917 − 1930  doi: 10.1021/cr040435v

    136. [136]

      Tandon S, Horowitz P. J Biol Chem, 1986, 261: 15615 − 15618

    137. [137]

      Tandon S, Horowitz P M. J Biol Chem, 1987, 262: 4486 − 4491

    138. [138]

      Rozema D, Gellman S H. J Am Chem Soc, 1995, 117: 2373 − 2374  doi: 10.1021/ja00113a036

    139. [139]

      Liu X, Liu Y, Zhang Z K, Huang F, Tao Q, Ma R J, An Y L, Shi L Q. Chem Eur J, 2013, 19: 7437 − 7442  doi: 10.1002/chem.201300634

    140. [140]

      Huang F, Shen L L, Wang J Z, Qu A T, Yang H R. Zhang Z K, An Y L, Shi L Q. ACS Appl Mater Interfaces, 2016, 8: 3669 − 3678  doi: 10.1021/acsami.5b08843

    141. [141]

      Ma F H, An Y L, Wang J Z, Song Y Q, Liu Y, Shi L Q. ACS Nano, 2017, 11: 10549  doi: 10.1021/acsnano.7b05947

    142. [142]

      Ganguli S, Yoshimoto K, Tomita S, Sakuma H, MatsuokaT, Shiraki K, Nagasaki Y. J Am Chem Soc, 2009, 131: 6549 − 6553  doi: 10.1021/ja900786z

    143. [143]

      Kameta N, Masuda M, Shimizu T. ACS Nano, 2012, 6(6): 5249 − 5258  doi: 10.1021/nn301041y

    144. [144]

      Beierle J M, Yoshimatsu K, Chou B, Mathews M A A, Lesel B K, Shea K J. Angew Chem Int Ed, 2014, 53: 9275 − 9280  doi: 10.1002/anie.201404881

    145. [145]

      Huang F, Wang J Z, Qu A T, Shen L L, Liu J J, Liu J F, Zhang Z K, An Y L, Shi L Q. Angew Chem Int Ed, 2014, 53: 8985 − 8990  doi: 10.1002/anie.201400735

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